Centrifugal compressor for turbo chiller, turbo chiller, and control method therefor
A turbo chiller that can accurately determine the existence of surging occurring in a centrifugal compressor is provided. In a centrifugal compressor of a turbo chiller, which includes an impeller for compressing refrigerant, a resistance temperature sensor for detecting the refrigerant temperature is provided at the upstream side of the impeller. Accordingly, a temperature rise caused by surging can be detected and the existence of surging can be accurately determined.
1. A turbo chiller, comprising:
a centrifugal compressor having a temperature sensor for detecting the temperature of a refrigerant at the upstream side of an impeller that compresses the refrigerant;
a changing-current determining device which detects a driving current of an electric motor for driving the impeller to determine changes in the current;
a surging determining device which detects a rise in refrigerant temperature from the output of the temperature sensor and determines the existence of surging based on the driving current detected by the changing-current determining device and the detected rise in refrigerant temperature;
a rotation-speed control device that controls the rotation speed of the electric motor by means of an instruction; and
an excessive-rotation-speed determining device for determining whether or not a designated value of the rotation speed control device exceeds a rating by a predetermined amount.
2. A turbo chiller according to claim 1 , comprising:
a hot gas bypass pipe which channels part of the refrigerant at the discharge side of the centrifugal compressor towards the suction side;
a hot gas bypass valve disposed in the hot gas bypass pipe; and
a hot gas bypass valve control device which, after determining the existence of surging with the surging determining device, opens the hot gas bypass valve by a predetermined amount and, in response to a change in current obtained by the changing-current determining device, further opens the hot gas bypass valve.
3. A turbo chiller according to claim 1 , comprising:
a hot gas bypass pipe which channels part of the refrigerant at the discharge side of the centrifugal compressor towards the suction side;
a hot gas bypass valve disposed in the hot gas bypass pipe; and
a hot gas bypass valve control device which, after determining the existence of surging with the surging determining device, opens the hot gas bypass valve by a predetermined amount.